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HSC Science (General) इयत्ता १२ वी - Maharashtra State Board Important Questions for Physics

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The co-efficient of mutual induction between primary and secondary coil is 2H. Calculate induced e.m.f. if current of 4A is cut off in 2.5 x 10-4 seconds

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Inductance >> Mutual Inductance

A conductor of any shape, having area 40 cm2 placed in air is uniformly charged with a charge 0* 2µC. Determine the electric intensity at a point just outside its surface. Also, find the mechanical force per unit area of the charged conductor.

[∈0=8.85x10-12 S.I. units]

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Mechanical Force on Unit Area of a Charged Conductor

Electric field intensity in free space at a distance ‘r’ outside the charged conducting sphere of radius ‘R’ in terms of surface charge density ‘ a ’ is............................

(a)`sigma / in_0[R/r]^2`

(b)`in_0/sigma[R/r]^2`

(c)`R/r[sigma/in_0]^2`

(d)`R/sigma[r/in_0]^2`

 

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Electromagnetic Induction

The magnetic flux through a loop varies according to the relation Φ = 8t2 + 6t + C, where ‘C’ is constant, 'Φ' is in milliweber and 't' is in second. What is the magnitude of induced e.m.f. in the loop at t = 2 seconds.

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Electromagnetic Induction

If the radius of a sphere is doubled without changing the charge on it, then electric flux originating from the sphere is ______.

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Inductance >> Mutual Inductance

A solenoid of length 1.5 m and 4 cm in diameter possesses 10 turns per metre. A current of 5 A is flowing through it. The magnetic induction at a point inside the solenoid along the axis is ............................. .

0 = 4π × 10-7 Wb/Am)

  1. π  × 10-5 T
  2. 2π × 10-5 T
  3. 3π × 10-5 T
  4. 4π × 10-5 T
Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Electromagnetic Induction

Explain the phenomenon of self induction

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Inductance >> Self Inductance

Draw a neat labelled diagram of a parallel plate capacitor completely filled with dielectric.

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: The Parallel Plate Capacitor

Electrostatic energy of 3·5 x 10-4 J is stored in a capacitor at 700 V. What is the charge on the capacitor?

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Energy of Charged Condenser

A metal rod `1/sqrtpi `m long rotates about one of its ends perpendicular to a plane whose magnetic induction is 4 x 10-3 T. Calculate the number of revolutions made by the rod per second if the e.m.f. induced between the ends of the rod is 16 mV.

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Electromagnetic Induction

A network of four capacitors of 6 μF each is connected to a 240 V supply. Determine the charge on each capacitor.

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Condensers in Series and Parallel,

Intensity of electric field at a point close to and outside a charged conducting cylinder is proportional to ______. (r is the distance of a point from the axis of cylinder)

(A) `1/r`

(B) `1/r^2`

(C) `1/r^3`

(D) r3

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Energy of Charged Condenser

The magnetic flux through a loop is varying according to a relation `phi = 6t^2 + 7t + 1` where `phi` is in milliweber and t is in second. What is the e.m.f. induced in the loop at t = 2 second?

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Electromagnetic Induction

Explain self induction and mutual induction

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Inductance >> Mutual Inductance

A cube of marble having each side 1 cm is kept in an electric field of intensity 300 V/m. Determine the energy contained in the cube of dielectric constant 8. [Given : ∈0 = 8.85  10–12 C^2/Nm^2]

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Energy of Charged Condenser

Obtain an expression for electric field intensity at a point outside uniformly charged thin plane sheet.

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Effect of Dielectric on Capacity

Derive an expression for e.m.f. and current in terms of turns ratio

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Transformers

Prove theoretically  (electromagnetic induction) `e = (dphi)/(dt)`

Appears in 1 question paper
Chapter: [12] Electromagnetic Induction
Concept: Electromagnetic Induction

With the help of a neat diagram, describe the construction and working of van de Graff generator.

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Van-deGraaff Generator

The energy density at a point in a medium of dielectric constant 6 is 26.55 × 106 J/m3. Calculate electric field intensity at that point. (ε0 = 8.85 × 10−12 SI units).

Appears in 1 question paper
Chapter: [12] Electrostatics
Concept: Energy Density of a Medium
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